基础医学与临床 ›› 2013, Vol. 33 ›› Issue (3): 308-313.

• 研究论文 • 上一篇    下一篇

cPKCγ在HPC抗N2a细胞OGD损伤中作用及其分子机制

罗宏1,苏吉儿1,韩松1,李俊发2   

  1. 1. 首都医科大学神经生物学系
    2. 首都医科大学
  • 收稿日期:2012-11-12 修回日期:2013-01-06 出版日期:2013-03-05 发布日期:2013-03-05
  • 通讯作者: 李俊发 E-mail:junfali@ccmu.edu.cn
  • 基金资助:
    国家自然科学基金;国家重点基础性研究项目;973前期专项

Role of cPKCγ in HPC protects N2a cells against OGD-induced injury and its molecular mechanism

  • Received:2012-11-12 Revised:2013-01-06 Online:2013-03-05 Published:2013-03-05
  • Contact: Jun-fa LI E-mail:junfali@ccmu.edu.cn

摘要: 目的 在离体细胞水平,探讨经典型蛋白激酶Cγ(cPKCγ)在低氧预适应(HPC)对抗小鼠成神经瘤细胞(N2a)氧糖剥夺(OGD)损伤中作用及其可能的细胞分子机制。方法 建立N2a细胞HPC和OGD模型,用3-(4,5-二甲基噻唑-2)-2,5-二苯基四氮唑溴盐(MTT)比色法、乳酸脱氢酶(LDH)漏出率、原位末端标记(TUNEL)和蛋白印迹(Western blot)几种方法,分别检测N2a细胞损伤、坏死、凋亡和自噬水平。 结果 OGD 2和4 h可使N2a细胞的生存率显著降低、死亡率明显增高(P<0.05, n=6);HPC(20 min)明显改善OGD 3 h对N2a细胞的损伤作用,而cPKCγ抑制剂Go6983(6 nmol/L)则显著解除HPC对OGD细胞的保护作用(P<0.05, n=16);OGD 3 h明显增加N2a细胞的凋亡数目(P<0.05, n=6),但HPC和Go6983+HPC均不能明显影响OGD细胞凋亡水平;OGD 3 h显著提高N2a细胞的自噬水平,Go6983和HPC+Go6983均可明显降低OGD细胞的自噬水平(P<0.05, n=6),而HPC则对OGD细胞的自噬水平无明显影响;HPC明显改善OGD 3 h致N2a细胞坏死的程度,而Go6983则可解除HPC的保护作用(P<0.05, n=16)。结论 在离体细胞水平证实了cPKCγ在HPC改善N2a细胞OGD 损伤中的作用,且这种作用主要与降低OGD细胞的坏死水平有关。

关键词: 低氧预适应(HPC), 氧糖剥夺(OGD), 细胞凋亡, 细胞自噬, 细胞坏死

Abstract: Objective To explore the role of conventional protein kinase C (cPKC) γ in hypoxic preconditioning (HPC) protecting mouse N2A neuroblastoma cells against oxygen-glucose deprivation (OGD)-induced ischemic injuries in vitro and its possible molecular mechanism. Methods By establishing hypoxic preconditioning (HPC) and oxygen-glucose deprivation (OGD) N2a cell models, and using thiazolyl blue tetrazolium bromide (MTT), lactate dehydrogenase (LDH) assay, terminal deoxynucleotidyl transferase (TdT)-mediated dUTP nick end labeling (TUNEL) staining and Western blot for LC3 II/I to detect the levels of N2a cell injury, necrosis, apoptosis and autophagy, respectively. Results OGD 2 and 4 h could significantly affect the viability and mortality of N2a cells, respectively (P<0.05, n=6 per group); HPC (20 min) could protect the N2a cells against OGD 3 h-induced ischemic injuries, but the cPKCγ inhibitor Go6983b (6 nmol/L) abolished this neuroprotection of HPC (P<0.05, n=16); OGD 3 h significantly increased the apoptosis numbers(P<0.05, n=6), but both HPC and HPC+Go6983 did not affect OGD 3 h-induced cell apoptosis of N2a cells; OGD 3 h could enhance the autophagy level of N2a cells, but both Go6983 and HPC+Go6983, not HPC alone, could inhibit OGD 3 h-induced cell autophagy (P<0.05, n=6); HPC could significantly inhibit OGD 3 h-induced cell necrosis, but cPKCγ inhibitor Go6983 (HPC+ Go6983) abolished this HPC-induced neuroprotection (P<0.05, n=16). Conclusion These results demonstrated that cPKCγ plays an important role in HPC protecting N2a cells against OGD-induced ischemic injuries, and this neuroprotective effect of HPC is mainly due to the reduction in necrosis of OGD treated N2a cells.

Key words: Hypoxic preconditioning (HPC), Oxygen-glucose deprivation (OGD), Cell apoptosis, Cell autophagy, Cell necrosis

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